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Air-ground temperature coupling and subsurface propagation of annual temperature signals

机译:空地温度耦合和年度温度信号的地下传播

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摘要

Borehole-based reconstructions of ground surface temperature (GST) have been widely used as indicators of paleoclimate. These reconstructions assume that heat transport within the subsurface is conductive. Climatic interpretations of GST reconstructions also assume that GST is strongly coupled to surface air temperature (SAT) on timescales of decades and longer. We examine these two assumptions using records of SAT and subsurface temperature time series from Fargo, North Dakota; Prague, Czech Republic; Cape Henlopen State Park, Delaware; and Cape Hatteras National Seashore, North Carolina. The characteristics of downward propagating annual temperature signals at each site clearly indicate that heat transport can be described as one-dimensional conduction in a homogeneous medium. Extrapolations of subsurface observations to the ground surface yield estimates of annual GST signals and allow comparisons to annual SAT signals. All annual GST signals are modestly attenuated and negligibly phase shifted relative to SAT. The four sites collectively demonstrate that differences between annual GST and SAT signals arise in both summer and winter seasons, in amounts dependent on the climatic setting of each site.
机译:基于钻孔的地表温度重建(GST)已被广泛用作古气候指标。这些重建假设地下内的热传输是传导性的。对GST重建的气候解释还假设,GST在数十年甚至更长的时间尺度上与地面气温(SAT)紧密相关。我们使用来自北达科他州法戈的SAT记录和地下温度时间序列来检验这两个假设。布拉格,捷克共和国;特拉华州亨勒彭角州立公园;和北卡罗来纳州的哈特拉斯角国家海滨。在每个站点向下传播的年温度信号的特征清楚地表明,热传递可以描述为在均匀介质中的一维传导。将地下观测值外推到地面,可以估算出年度GST信号,并可以与SAT年度信号进行比较。相对于SAT,所有年度GST信号均经过适度衰减且相移可忽略不计。这四个地点共同证明,夏季和冬季的年度GST和SAT信号之间存在差异,其数量取决于每个地点的气候设置。

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